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Displacement Field Computation from 3D Echocardiographic Sequences

机译:从3D超声心动图序列进行位移场计算

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A method for 3D displacement field computation of a beating heart from 3D echocardiographic sequences is proposed. A feature based tracking algorithm provides reliable displacement estimates for a little set of points during a cardiac cycle. A physically based constraint is used in order to reconstruct the dense displacement field in each volume point starting from the features displacements. Linear elastic theory provides this constraint. In particular the 3D volume is considered as an hookean elastic solid that fulfil the Navier equation of motion. The solution of the elastostatic problem is given by a set of coupled elliptic partial differential equations (PDE's). The numerical solution is provided by discretizing the PDE's and obtaining a system of algebric linear equations. Results obtained by the application of the method to real 3D echocardiographic sequences are presented.
机译:提出了一种从3D超声心动图序列计算跳动心脏的3D位移场的方法。基于特征的跟踪算法可为心动周期中的少量点提供可靠的位移估计。使用基于物理的约束以便从特征位移开始重建每个体积点中的密集位移场。线性弹性理论提供了这种约束。特别是3D体积被视为满足运动的Navier方程的韩式弹性实体。弹性静力学问题的解决方案由一组耦合的椭圆偏微分方程(PDE)给出。通过离散化PDE并获得代数线性方程组,可以提供数值解。提出了通过将该方法应用于真实的3D超声心动图序列而获得的结果。

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